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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The Lithium, Boron and Beryllium content of serpentinized peridotites from ODP Leg 209 (Sites 1272A and 1274A): Implications for lithium and boron budgets of oceanic lithosphere
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The Lithium, Boron and Beryllium content of serpentinized peridotites from ODP Leg 209 (Sites 1272A and 1274A): Implications for lithium and boron budgets of oceanic lithosphere

机译:ODP腿209(站点1272A和1274A)蛇纹石橄榄岩中锂,硼和铍的含量:对海洋岩石圈锂和硼预算的影响

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摘要

Despite the key importance of altered oceanic mantle as a repository and carrier of light elements (B, Li, and Be) to depth, its inventory of these elements has hardly been explored and quantified. In order to constrain the systematics and budget of these elements we have studied samples of highly serpentinized (>50%) spinel harzburgite drilled at the Mid-Atlantic Ridge (Fifteen-Twenty Fracture zone, ODP Leg 209, Sites 1272A and 1274A). In-situ analysis by secondary ion mass spectrometry reveals that the B, Li and Be contents of mantle minerals (olivine, orthopyroxene, and clinopyroxene) remain unchanged during serpentinization. B and Li abundances largely correspond to those of unaltered mantle minerals whereas Be is close to the detection limit. The Li contents of clinopyroxene are slightly higher (0.44-2.8 mu g g(-1)) compared to unaltered mantle clinopyroxene, and olivine and clinopyroxene show an inverse Li partitioning compared to literature data. These findings along with textural observations and major element composition obtained from microprobe analysis suggest reaction of the peridotites with a mafic silicate melt before serpentinization. Serpentine minerals are enriched in B (most values between 10 and 100 mu g g(-1)), depleted in Li (most values below I mu g g(-1)) compared to the primary phases, with considerable variation within and between samples. Be is at the detection limit. Analysis of whole rock samples by prompt gamma activation shows that serpentinization tends to increase B (10.4-65.0 mu g g(-1)), H2O and Cl contents and to lower Li contents (0.07-3.37 mu g g(-1)) of peridotites, implying that-contrary to alteration of oceanic crust-B is fractionated from Li and that the B and Li inventory should depend essentially on rock-water ratios. Based on our results and on literature data, we calculate the inventory of B and Li contained in the oceanic lithosphere, and its partitioning between crust and mantle as a function of plate characteristics. We model four cases, an ODP Leg 209-type lithosphere with almost no igneous crust, and a Semail-type lithosphere with a thick igneous crust, both at I and 75 Ma, respectively. The results show that the Li contents of the oceanic lithosphere are highly variable (17-307 kg in a column of I m x I m x thickness of the lithosphere (kg/col)). They are controlled by the primary mantle phases and by altered crust, whereas the B contents (25-904 kg/col) depend entirely on serpentinization. In all cases, large quantities of B reside in the uppermost part of the plate and could hence be easily liberated during slab dehydration. The most prominent input of Li into subduction zones is to be expected from Semail-type lithosphere because most of the Li is stored at shallow levels in the plate. Subducting an ODP Leg 209-type lithosphere would mean only very little Li contribution from the slab. Serpentinized mantle thus plays an important role in B recycling in subduction zones, but it is of lesser importance for Li. (C) 2008 Elsevier Ltd. All rights reserved.
机译:尽管改变海洋地幔作为深层轻元素(B,Li和Be)的储存库和载体的关键重要性,但几乎没有探索和量化其轻元素的清单。为了限制这些元素的系统性和预算,我们研究了在大西洋中脊(15-20断裂带,ODP腿209,站点1272A和1274A)钻出的高度蛇纹石化(> 50%)尖晶石harzburgite的样品。通过二次离子质谱仪进行的原位分析表明,蛇纹石化过程中地幔矿物(橄榄石,邻苯二茂铁和次氯苯比妥)的B,Li和Be含量保持不变。 B和Li的丰度在很大程度上与未改变的地幔矿物的丰度相对应,而Be接近检测极限。相较于未改变的地幔环吡rox烯,环吡rox烯的Li含量略高(0.44-2.8μg g(-1)),与文献数据相比,橄榄石和环吡rox烯显示出相反的Li分配。这些发现以及从微观探针分析获得的组织学观察结果和主要元素组成表明蛇纹岩在蛇纹石化之前与镁铁质硅酸盐熔体反应。与初级相相比,蛇纹石矿物的B含量最高(大多数值在10至100μgg(-1)之间),而Li盐含量最高(大多数值在Iμgg(-1)以下),样品内部和样品之间的变化很大。是处于检测极限。通过快速伽马活化对整个岩石样品进行分析表明,蛇纹岩化倾向于增加橄榄岩的B(10.4-65.0 mu gg(-1)),H2O和Cl含量并降低Li含量(0.07-3.37 mu gg(-1)) ,这意味着与锂壳B的变化相反,它是从Li中分离出来的,并且B和Li的存量应主要取决于岩水比。根据我们的结果和文献资料,我们计算了海洋岩石圈中所含的B和Li的总量,以及它们根据板块特征在地壳和地幔之间的分配。我们模拟了四种情况,分别是在I和75 Ma时几乎没有火成壳的ODP Leg 209型岩石圈和具有火成壳厚的Semail型岩石圈。结果表明,海洋岩石圈中的Li含量变化很大(I m x I m x岩石圈厚度(kg / col)的列中为17-307 kg)。它们受原始地幔相和地壳变化的控制,而硼含量(25-904 kg / col)完全取决于蛇纹石化。在所有情况下,大量的B驻留在板的最上部,因此在板坯脱水过程中很容易释放出来。预计在Semail型岩石圈中,Li会进入俯冲带,这是最突出的输入,因为大多数Li都存储在板中的浅层。减去ODP腿209型岩石圈将意味着板中的锂贡献很小。因此,蛇纹化的地幔在俯冲带中的B循环中起着重要的作用,但对Li的重要性不大。 (C)2008 Elsevier Ltd.保留所有权利。

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